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81.
活性炭纤维对活性染料的吸附动力学研究 总被引:24,自引:2,他引:22
研究了活性炭纤维从水溶液中吸附4种活性染料(活性艳红K-2BP、活性翠蓝KN-G、活性金黄K-3RP、活性黑KN-B)的吸附特性,从动力学角度探讨了吸附机理.结果表明,活性炭纤维对4种染料的平衡吸附量qe均随着初始浓度和温度的增加而升高,相同条件下,qe的大小顺序为:活性艳红>活性金黄>活性黑>活性翠蓝.吸附过程符合伪二级吸附速率方程,染料分子的空间结构、大小和极性是影响初始吸附速率的主要因素.活性炭纤维对4种染料的吸附活化能都比较低,依次为16 .42、3 .56、5 .21和26 .38 kJ·mol-1,说明吸附过程以物理吸附为主. 相似文献
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改性硅藻土对三种有机染料的吸附作用研究 总被引:11,自引:2,他引:9
以天然硅藻土分别负载十六烷基三甲基溴化铵(CTMAB)、四甲基溴化铵(TMAB)和壳聚糖,制得一系列改性硅藻土,研究了改性硅藻土吸附水中的阴离子染料(活性红120)、阳离子染料(亚甲基蓝)、酸性染料(玫瑰红B)的适宜条件及吸附机理.结果表明,天然硅藻土对亚甲基蓝、四甲基溴化铵改性硅藻土对玫瑰红B和壳聚糖改性硅藻土对活性红120的饱和吸附量分别为51.15、49.56、56.64mg.L-1,效果良好,可被直接利用.延长吸附时间、增大吸附剂用量、控制溶液的pH值(<6)都能提高改性硅藻土吸附剂的吸附效果;3种染料在各自吸附剂上的平衡吸附量Qe与平衡浓度Ce之间的关系均符合Freundlich等温吸附方程,表明改性硅藻土吸附染料以分配作用、弱的溶质吸收为主.改性剂的引入可以改变硅藻土的表面电性,从而对不同类型染料的吸附能力产生不同影响. 相似文献
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Considering the amount of colored waste water generated from many industries (textile, leather, paper, printing, dyestuff, and plastic) that are sent to various water bodies and the ecosystem, the search for efficient and better methods of purification still continues. With the recent research into metal organic frameworks (MOFs), there is a steady growing interest worldwide for their various applications. This article presents a review of MOFs, their application in dye adsorption and their various challenges and future prospects. It was concluded that with the current interest, research and development for various applications, there are possibilities which will bring to limelight more laboratory, industrial and environmental usage of MOFs as dye adsorbents. 相似文献
86.
Wool dyeing wastewater contains xenobiotic compounds that can be removed by biotechnological processes. Studies on various dyes showed that anaerobic processes are suitable to alter azo dyes as a first step of the biodegradation process. These compounds are reduced by anaerobic consortia to aromatic amines and its ultimate degradation can be achieved by a further aerobic treatment. Studies on degradation rate of an wool acid dye were performed in batch systems inoculated with anaerobic biomass. A commercial diazo dye, Acid Red 73, was added to the synthetic medium in which glucose was used as sole carbon source. Results indicated that the Acid Red 73 was partially degraded by a mixed culture of anaerobic bacteria and a decolorization of 90% was obtained. Kinetics studies on removal of the colour showed that the decolorization rate was several times faster than the degradation rate of glucose for a range of dye concentrations between 60 mg/L and 400 mg/L. A first order kinetic model was used for dye concentrations up to 200 mg/L. For higher concentrations a model similar to the Michaelis‐Menten equation was better fitted to the experimental data. 相似文献
87.
Aqueous biphasic systems (ABSs) composed of polyethylene glycol (PEG) and salt have been examined for the removal of textile dyes from textile effluent. The partitioning of four dyes namely Cibacron Scarlet LS 2G, Rhodamine B, Brown ERN and Astacryl Red 3B was investigated. All the dyes studied were found to partition into the upper PEG rich layer. Sodium carbonate was found to be the most efficient salt for extraction of dyes. Sodium sulphate was found to be marginally less efficient. Sodium chloride did not cause partitioning at all. Partitioning occurred at all pH and was almost pH independent. The partitioning of these dyes in larger volume (100?mL) ABS was also demonstrated. Studies using dye bath effluent were also conducted. In all cases very high efficiencies consistently above 98% were obtained. 相似文献
88.
自然生物膜对水体中罗丹明B的净化与响应 总被引:1,自引:0,他引:1
以RhB(RhodamineB, 罗丹明B)为模型染料,研究了自然生物膜对RhB的去除,并分别使用Biolog和PLFA(磷脂脂肪酸)为技术手段和指标,探究RhB的存在对自然生物膜微生物群落结构和微生物碳源利用多样性的影响. 结果表明,第1天自然生物膜对水体中RhB的去除率为29.2%,之后几天的平均去除率降至3.9%左右;在测试期内RhB的总去除率达到68.6%. PLFA测定结果表明,RhB使自然生物膜中的PLFA总量减少了52.23%,其中细菌、真菌和放线菌的数量分别减少了75.81%、67.03%和100%. Biolog测定结果表明,低质量浓度的RhB降低了自然生物膜中微生物群落对碳源的利用能力,改变了生物膜微生物群落对31种碳源的利用情况,但RhB并没有对自然生物膜的微生物结构造成完全的破坏. 综上,自然生物膜作为一种自然水体中自生的微生物聚集体具有显著的生态学意义,其对低质量浓度的RhB具有一定的净化作用,但是RhB的存在也会对自然生物膜的结构和功能产生影响. 相似文献
89.
复极性固定床电解反应器对活性染料的降解 总被引:11,自引:0,他引:11
本文用复极性固定床电解反应器对16种活性染料的脱色降解进行了试验研究。结果表明:染料脱色率在99.6%以上,出水上清液COD去除率绝大部分在90%以上,对活性翠蓝KN-G和活性深蓝KM-GR的铜去除率分别为97.0%和99.7%。 相似文献
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